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Reliability Analysis of Subsea Separation and Boosting System Using Dynamic Bayesian Network

机译:基于动态贝叶斯网络的海底分离与增压系统可靠性分析

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As the population grows rapidly in the world and the living standards are getting higher, the energy demandrncontinues to grow. According to the Annual Energy Outlook 2016, the estimated oil and gas consumptionsrnwill increase at an annual average rate of 0.2% from 2015 to 2040. To meet the growing energy demand,rnoffshore drilling will continue to explore ultra-deep sea locations and enhance the hydrocarbon recovery inrnthe production processes. The maturing deep-water oil fields face low reservoir pressure. In order to send thernhydrocarbons back to the platform and the onshore facilities, overcoming the hydrostatic pressure from thernoverlaying liquid, which requires sufficient amount of pressure, becomes a significant challenge. Therefore,rnhydrocarbon boosting system is developed to enhance the transportation to the platform. Additionally,rnhydrocarbon boosting system can increase the oil recovery factor by 10% to 30%, which is equivalent torntransferring additional 50–150 million bbl (fluid barrel) of oil.
机译:随着世界人口的快速增长和生活水平的提高,能源需求持续增长。根据《 2016年年度能源展望》,从2015年到2040年,估计的石油和天然气消耗量将以每年0.2%的平均速度增长。为满足不断增长的能源需求,海上钻探将继续探索超深海位置并增强油气资源恢复生产过程。成熟的深水油田面临着较低的储层压力。为了将碳氢化合物送回平台和陆上设施,克服来自覆层液体的静水压力(这需要足够的压力)成为一项重大挑战。因此,开发了rnhydrocarbon增压系统,以增加到平台的运输。此外,碳氢化合物强化系统可以将石油采收率提高10%至30%,这相当于额外转移50–1.5亿桶(流体桶)的石油。

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    Mary Kay O'Connor Process Safety Center, Artie McFerrin Department of Chemical Engineering, Texas AM University;

    Mary Kay O'Connor Process Safety Center, Artie McFerrin Department of Chemical Engineering, Texas AM University;

    Mary Kay O'Connor Process Safety Center, Artie McFerrin Department of Chemical Engineering, Texas AM University;

    Mary Kay O'Connor Process Safety Center, Artie McFerrin Department of Chemical Engineering, Texas AM University;

    Mary Kay O'Connor Process Safety Center, Artie McFerrin Department of Chemical Engineering, Texas AM University;

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